Biological effect of radiotherapy on cancer cells

A. Dubrovska, M. Krause, M. Baumann
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引用次数: 1

Abstract

Radiation therapy is a mainstay for curative treatment of many types of tumours. The cure rate of radiation therapy depends on its ability to induce non-repairable DNA damage leading to cellular death or loss of proliferative capacity. In addition to clinical factors, efficacy of radiation therapy has been explained by the radiobiological concept of 4R parameters summarized by Rodney Withers in 1975, which include Repair of DNA damage, Repopulation, Redistribution of tumour cells in the cell cycle, and Reoxygenation. This chapter reviews the direct and indirect effects of irradiation on cancer cells, mechanisms of DNA repair and radiation-induced cell death, and also discusses implementation of the cancer stem cell model for the radiobiological concept of tumour radioresistance.
放疗对癌细胞的生物学效应
放射疗法是治疗多种肿瘤的主要手段。放射治疗的治愈率取决于其诱导不可修复的DNA损伤导致细胞死亡或增殖能力丧失的能力。除了临床因素外,放射治疗的疗效还可以用Rodney Withers在1975年总结的4R参数的放射生物学概念来解释,其中包括DNA损伤的修复、再繁殖、肿瘤细胞在细胞周期中的再分布和再氧化。本章回顾了辐射对癌细胞的直接和间接影响,DNA修复机制和辐射诱导的细胞死亡,并讨论了肿瘤放射抵抗的放射生物学概念的癌症干细胞模型的实现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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